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Identification of a novel jasmonate-responsive cis-element and functional analysis of trans-acting factor, AtBBD1 : 자스몬산에 반응하는 새로운 프로모터 cis-element의 규명과 그와 상호작용 하는 전사 인자인 AtBBD1의 기능 분석

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dc.contributor.advisor최양도-
dc.contributor.author서준성-
dc.date.accessioned2017-07-13T08:18:05Z-
dc.date.available2017-07-13T08:18:05Z-
dc.date.issued2013-02-
dc.identifier.other000000008277-
dc.identifier.urihttps://hdl.handle.net/10371/119424-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 농생명공학부 응용생명화학 전공, 2013. 2. 최양도.-
dc.description.abstractJasmonates (JAs) are important regulators of plant biotic and abiotic stress responses and development. AtJMT in Arabidopsis thaliana and BcNTR1 in Brassica campestris encode jasmonic acid carboxyl methyltransferases, which catalyze methyl jasmonate (MeJA) biosynthesis and are involved in JA signaling. Their expression is induced by MeJA application. To find out JA-responosive elements in AtJMT and BcNTR1 promoters, various promoter deletion fragment of each promoter were recombined with GUS reporter gene. Each promoter deletion construct was introduced into Arabidopsis plant. Each transgenic plant was treated with MeJA and transcript of reporter gene was checked to test JA-responsive gene induction. It was revealed that specific region of AtJMT (-2,294~-2,280) and BcNTR1 (-3,518~-3,480) promoter was important for JA-responsive gene expression. Alignment of these sequences showed that completely same 6 nucleotides (TCCTGA) were found in both promoter regions. It was expected that this element was critical for JA-responsive gene expression. To confirm the function of this element, multimeric construct of this element was made and introduced into Arabidopsis. RT-PCR and GUS staining of transgenic plant after MeJA treatment were showed that this 6 nucleotide (TCCTGA) was important for JA-responsive gene expression. Therefore, this element was defined as a novel JA-responsive cis-element (JARE) in the AtJMT and BcNTR1 promoters, because the JARE is distinct from other JA-responsive cis-elements previously reported.
On the other hand, Y1H screening was also carried out to identify a trans-acting factor. JA-responsive region (-3,518~-3,390) of BcNTR1 promoter was used as a bait and MeJA treated Arabidopsis cDNA library was used for Y1H screening. As a result, AtBBD1, an Arabidopsis homologue of the Oryza minuta bifunctional nuclease in basal defense response (OmBBD1), was screened out. To find out specific cis-element which AtBBD1 bind to, we divided and mutated the bait fragment for Y1H assay. Y1H assay results showed that AtBBD1 bound to the JARE and it extended JARE to (G/C)TCCTGA. To investigate the function of AtBBD1 in JA signaling pathway, Y2H assay was carried out between AtBBD1 and AtJAZs proteins. It was found that AtJAZ1 and 4 interact with AtBBD1. In vitro pull down assay also showed that AtBBD1 and AtJAZ1 was interact with each other. Protein deletion experiment with Y2H showed that N-terminal region containing HCR motif of AtBBD1 was interacted with TIFY containing region of AtJAZ1. To investigate the function of AtBBD1 on its target gene and JA signaling pathway, knockout (atbbd1) and overexpression plants were analysed. Single knockout of AtBBD1 showed no significant difference on AtJMT gene expression in response to MeJA treatment. But double knockout (atbbd1 atbbd2) plant of AtBBD1 and AtBBD2, which has 81% amino acid sequence similarity, showed that AtJMT expressed higher than wild-type in response to MeJA. But JR2, JA-responsive marker gene, expression was reduced in atbbd1 atbbd2. On the other hand, AtBBD1 overexpressing plant showed that AtJMT expression was reduced and JR2 expression was enhanced in response to MeJA treatment. Therefore, AtBBD1 and its close homologue AtBBD2 are functionally redundant and act as negative regulators of AtJMT expression. However, AtBBD1 positively regulated the JA-responsive expression of JR2. To understand AtBBD1 repression mechanism, chromatin acetylation level was tested by Chromatin immunoprecipitation (ChIP) with specific acetylated antibody because it was known that AtJAZ1 interacted with histone deacetylase directly or indirectly previouly. ChIP data from knockout and overexpression plants revealed that repression of AtJMT is associated with reduced histone acetylation in the promoter region containing the JARE. These results show that AtBBD1 interacts with JAZ proteins, binds to the JARE and represses AtJMT expression.
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dc.description.tableofcontentsI. INTRODUCTION 1
II. LITERATURE REVIEW 5
1. Mechanism of jasmonate signal transduction in plant 8
1.1. The COI1-JAZ receptor complex 8
1.2. Inositol pentakisphosphate is a cofactor of the JA receptor 11
1.3. Alternative splicing leads to dominant JAZ repressors 14
1.4. JAZ-controlled TFs 15
2. JA-responsive cis-elements in plants 24
2.1. JA-responsive promoter elements: the GCC motif 24
2.2. JA-responsive promoter elements: the G-box motif 25
2.3. JA-responsive promoter elements: other motifs 26
3. Histone deacetylation in Arabidopsis 27
III. MATERIALS AND METHODS 31
1. Bacterial strains and culture media 31
2. Enzymes and chemicals 31
3. Yeast strain 32
4. Plant materials and treatments 32
5. Genomic Southern blot analysis 33
6. RNA gel blot and RT-PCR analyses 33
7. Chromatin immunoprecipitation 34
8. Subcellular localization of AtBBD1 protein 35
9. Yeast one-hybrid (Y1H) screening and assay 35
10. Yeast two-hybrid (Y2H) assay 36
11. In vitro pull-down assay 36
12. In vitro degradation of OsJAZ1 37
13. Agroinfiltration and transient protein expression 38
IV. RESULTS 35
1. The Promoter regions of BcNTR1 and AtJMT contain a JA-responsive element 40
2. Identification of a JARE in the AtJMT promoter 43
3. Identification of a JARE in the BcNTR1 promoter 47
4. A multimerized JARE-containing construct responds to MeJA 53
5. Identification of a JARE-binding protein 60
6. JARE is distinct from the G-box 75
7. The C-terminal region of AtBBD1 has DNA binding activity 79
8. AtBBD1 interacts with the ZIM/TIFY domain of AtJAZ1 through its HCR domain 84
9. AtBBD1 negatively regulates AtJMT 94
10. Chromatin immunoprecipitation reveals that AtBBD1 repression of AtJMT is associated with histone deacetylation 108
V. DISCUSSION 112
VI. REFERENCES 122
VII. ABSTRACT IN KOREAN 138
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dc.formatapplication/pdf-
dc.format.extent13115078 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectJA-responsive element-
dc.subject.ddc630-
dc.titleIdentification of a novel jasmonate-responsive cis-element and functional analysis of trans-acting factor, AtBBD1-
dc.title.alternative자스몬산에 반응하는 새로운 프로모터 cis-element의 규명과 그와 상호작용 하는 전사 인자인 AtBBD1의 기능 분석-
dc.typeThesis-
dc.contributor.AlternativeAuthorSeo Jun Sung-
dc.description.degreeDoctor-
dc.citation.pagesix, 145-
dc.contributor.affiliation농업생명과학대학 농생명공학부-
dc.date.awarded2013-02-
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